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EP2162037B1 - Behälter zur lagerung und entladung von schüttgut - Google Patents

Behälter zur lagerung und entladung von schüttgut Download PDF

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Publication number
EP2162037B1
EP2162037B1 EP08761307A EP08761307A EP2162037B1 EP 2162037 B1 EP2162037 B1 EP 2162037B1 EP 08761307 A EP08761307 A EP 08761307A EP 08761307 A EP08761307 A EP 08761307A EP 2162037 B1 EP2162037 B1 EP 2162037B1
Authority
EP
European Patent Office
Prior art keywords
container
hopper
vessel
tank
discharge outlet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP08761307A
Other languages
English (en)
French (fr)
Other versions
EP2162037A1 (de
Inventor
Michiel Kernkamp
Peter Jaggy
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nestec SA
Original Assignee
Nestec SA
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Application filed by Nestec SA filed Critical Nestec SA
Priority to EP08761307A priority Critical patent/EP2162037B1/de
Priority to PL08761307T priority patent/PL2162037T3/pl
Publication of EP2162037A1 publication Critical patent/EP2162037A1/de
Application granted granted Critical
Publication of EP2162037B1 publication Critical patent/EP2162037B1/de
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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • A47J31/407Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea with ingredient-containing cartridges; Cartridge-perforating means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D51/00Closures not otherwise provided for
    • B65D51/18Arrangements of closures with protective outer cap-like covers or of two or more co-operating closures
    • B65D51/20Caps, lids, or covers co-operating with an inner closure arranged to be opened by piercing, cutting, or tearing
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F11/00Coin-freed apparatus for dispensing, or the like, discrete articles
    • G07F11/02Coin-freed apparatus for dispensing, or the like, discrete articles from non-movable magazines
    • G07F11/44Coin-freed apparatus for dispensing, or the like, discrete articles from non-movable magazines in which magazines the articles are stored in bulk
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F13/00Coin-freed apparatus for controlling dispensing or fluids, semiliquids or granular material from reservoirs
    • G07F13/06Coin-freed apparatus for controlling dispensing or fluids, semiliquids or granular material from reservoirs with selective dispensing of different fluids or materials or mixtures thereof

Definitions

  • the present invention relates to a container for storing and unloading a bulk material in a tank. More particularly, the invention relates to a container for refilling a coffee powder tank, as shown in EP 434 168 .
  • the refilling of tanks consists in pouring the powder from a disposable powder bag type package for example gusset bags with zippers that allow the bag to be re-opened and closed. During this operation, the operator encounters several problems.
  • Another problem is caused by the mixing of the powder with air when it flows from one container to the other : it can create a problem of hygiene due to possible contamination with the outside environment, especially, when air and water sensitive powders are used. Moreover, air can generally cause a loss of aroma of the transferred coffee powder. Lastly, the dry powder can be a highly hygroscopic material, thereby leading to the formation of lumps and cakes that prevent gravity flow and transport of the powder inside the machine.
  • the present invention now resolves these deficiencies.
  • the invention relates to a container for storing and unloading bulk material comprising :
  • the present invention provides a container for a bulk material that can be either under the form of particles like granulates, granules, grains, powders and the like or under the form of a liquid, a paste or a gel in a closed manner in order to store, transport and sell this bulk material.
  • the container allows easy unloading of the bulk material from the container to a machine or the tank designed to be filled by the bulk material.
  • the container of the present invention comprises mainly a vessel with a closed end and an opened end ; its function is to receive and store the bulk material. Any shape of vessel could be used.
  • the section of the vessel can be circular, oval, square, or the like. The form and the size of the section can vary along the length of the vessel to provide a better handling of the container or for providing a marketing appeal.
  • the vessel is a cylinder presenting a round section or an oval section ; these forms enable easy manufacturing, easy storing and easy handling.
  • the vessel can be made of at least a material chosen between : plastic, cardboard paper, aluminium or a combination and/or laminate of such materials.
  • the preferred material is a laminate of sheets of paper, polyethylene, aluminium, polyethylene terephthalate and polyethylene according to this order. These materials are preferred as they lead to a low weight vessel, yet any other materials could be used to make the vessel. These materials should present a good humidity barrier and optionally, good oxygen barrier. Depending on the nature of the bulk material that is intended to be stored inside, these materials can also present UV rays- and light-barrier properties.
  • the closed end of the vessel can be at least partially transparent by using for example a transparent plastic. Such a transparent end enables the control of the level of the remaining bulk material inside the container when this one is used.
  • This transparent part of the vessel can also be placed near the opened end of the vessel with the same purpose. Preferably the opened end of the vessel presents a flange. This flange is useful for fixing the tearable membrane of the container.
  • the container of the present invention comprises a hopper which function is to enable the unloading of the bulk material from the vessel outside of the container.
  • This hopper or funnel-shaped receptacle enables the bulk material to fall by gravity into a receptacle placed at the opened end of the vessel.
  • the hopper is totally placed inside the vessel and directed so that it tapers in direction of the vessel opened end ; then its tapered end, corresponding to the hopper discharge outlet, faces the opened end of the vessel. Due to the fact that the hopper is totally placed inside the vessel volume, its tapered end is either at most in the same plane as the opened end of the vessel or recessed inside the vessel volume.
  • a groove extends between the wall of the hopper and the wall of the vessel along all the periphery of the hopper discharge outlet.
  • the hopper is usually positioned inside the vessel near the opened end of the vessel in order to let the most important volume of the vessel for storing the bulk material.
  • the hopper can be fixed in the vessel by heat-sealing, by high frequency adhesion, with an adhesive or the like.
  • the hopper can present an outer skirt presenting the same form as the vessel, said skirt being able to fit inside the vessel and to position the hopper inside the vessel, for example by leaning on it. This skirt can present a stopping edge able to lean on the edge of the opened end of the vessel in order to avoid the hopper to slide.
  • the hopper can present any form. It usually presents a circular form but it can also presents a specific form similar to the opening of the tank to be refilled with the container (like a square, a star, a heart and the like) ; this specific form can avoid the refilling of the tank with a product that is not adapted for.
  • the hopper has a frusto-conical shape.
  • the tapering angle of the hopper may depend from the nature and the granulometry of the bulk material.
  • the hopper usually presents a tapering angle ⁇ of at least 10° and at most 80°, preferably comprised between 15 and 50°, the tapering angle corresponding to the angle between the hopper tapering wall and the hopper central axis.
  • the finer or denser is the powder
  • the steeper is the tapering angle (around 20°) and the wider is the hopper discharge outlet.
  • the bigger are the powder particles or lighter is the powder
  • the flatter is the tapering angle (around 45°) and the smaller is the hopper discharge outlet.
  • the hopper comprises a bulk material guiding device coupled to the tapered end of the hopper.
  • Said guiding device may be for example a cylinder.
  • the outlet of the guiding device forms the hopper discharge outlet in place of the hopper tapered end.
  • the terms "hopper discharge outlet” mean the guiding device outlet.
  • the whole of the hopper and its bulk material guiding device must be in the volume of the vessel and the guiding device outlet is closed by the tearable membrane.
  • the sections of the hopper tapered end and the vessel opened end present generally symmetrical forms and have the same centre of symmetry.
  • the hopper tapered end presents a circular section and the vessel opened end presents a circular section too, both circular sections presenting the same centre.
  • the hopper is preferably made of plastic like high-density polyethylene polypropylene.
  • the container of the present invention comprises a tearable membrane that closes simultaneously the hopper and the vessel.
  • the tearable membrane closes the hopper inside the vessel volume.
  • the tearable membrane is in contact with the tapered end of the hopper or the discharge outlet of the bulk material guiding device according to the above preferred embodiment.
  • the tearable membrane aims at closing the container when it stores the bulk material.
  • the membrane is tearable by contact pressure on its surface.
  • Such a tearable function can be obtained by making small perforations through the membrane that would enable the tear of the membrane.
  • the membrane can present tear lines. It has been proved that when tear lines are straight lines intersecting at the centre of the membrane better opening of the membrane is obtained and better unloading of the bulk material is possible. Yet any other form of tear lines can be used.
  • the membrane may be made of any material that is tearable, this can be at least a material chosen between : paper, aluminium, polymer sheets and combination thereof.
  • the preferred membrane is a laminate of sheets of paper, polyethylene, aluminium and
  • the discharge outlet section of the hopper can be substantially in the plane of the opened end section of the vessel. This common plane is usually perpendicular to the main axis of the hopper.
  • the tearable membrane closes simultaneously the opened end of the vessel and the discharge outlet (either the hopper tapered end or the outlet of the guiding device) placed in the same plane. The membrane is then placed in this specific plane common to the opened end of the vessel and the discharge outlet.
  • the edge of the discharge outlet of the hopper can be recessed inside the vessel.
  • the edge of the hopper discharge outlet is set back from the vessel opened end.
  • the tearable membrane covers the edge of the discharge outlet of the hopper and is connected to the inner wall of the vessel.
  • the container may comprise a protection cap above the tearable membrane.
  • This cap enables the protection of the tearable membrane during the transport of the container.
  • This cap can be a peelable cover.
  • the different elements of the container may be connected by permanent or detachable means.
  • Permanent means may be designed to be sealing, welding, bonding, non-reversible clipping means or other means.
  • Detachable means may mean a container formed of a threaded portion or equivalent complementary mechanical engagement means on one of the elements of the container which collaborate with a threaded portion or complementary mechanical engagement means belonging to another element of the container.
  • the container is filled with coffee powder.
  • this type of container may be used for the storing and unloading of any other bulk material either in food or non food area, especially material that are sensible to the air and must be transferred from the container to another recipient with limited contact with the air.
  • Food material may be any food concentrate intended to reconstitute a hot or cold, frothy or non-frothy drink.
  • the bulk material may be a powder of soluble milk, coffee, cocoa, tea or a combination thereof.
  • Other powdered foods such as dried mashed potatoes or other dried foods, sauce or gravy powders, soup powders or the like may also be used in this invention.
  • the container of the present invention can also store pharmaceutical compounds or chemical compounds that must be feeded in machines with limited contact with air and in a rapid way. Such machines can be packaging machines or process machines.
  • the filling of the vessel part of the container of the present invention with the bulk material to be stored inside is generally realised on the container of which closed end has not yet been closed but for which all the other elements (hopper, membrane, eventually protection cap) are already present and assembled. Once the bulk material has been filled inside, the vessel is closed in a definitive way at its closed end.
  • the protection membrane is pierced to unload the bulk material and the container can no more be used.
  • the container is disposed when it is empty.
  • a part of the vessel can be a flexible pouch.
  • This flexible pouch corresponds usually to the closed end of the vessel, whereas the rest of the vessel is rigid for enabling the relative cooperation of the hopper, the vessel and the membrane.
  • the container of the present invention presents numerous advantages. Due to the fact that the functionalities of the container (the hopper and its position relative to the vessel) are hired inside the vessel, it is possible to choose any shape for the vessel, particularly shapes enabling easy manufacturing and easy storing and easy handling. For the same reason, the container is solid since no component extends out of the vessel and can be broken through manipulation. Moreover the container is compact and its internal space is optimized to store as much as possible of bulk ingredient while limiting the space for the emptying and connection functionality.
  • Another advantage of the container of the present invention is that it simultaneously enables the storage of a big quantity of bulk ingredient and the rapid emptying of this container through the hopper in an adapted tank.
  • the hopper reduces time for exhausting the material while protecting the material during its transfer.
  • a tank for storing bulk material and susceptible to be refilled by a container as described above said tank presenting refilling opening with means for piercing the tearable membrane of the container and for cooperating with the hopper of the container.
  • the means for piercing the tearable membrane of the container and for cooperating with the hopper are preferably a conduit presenting an outlet section smaller than the section of the opened end of the container vessel and bigger than the section of the hopper discharge outlet.
  • the outlet section of the tank conduit presents generally a symmetrical form preferably a circular form. It can present a specific form cooperating exactly with the discharge outlet of the hopper to avoid the refilling of the tank with a material that is not adapted for. Due to these relative section differences :
  • the tank can be a simple non disposable jar, the container enabling its refilling.
  • the container is then disposed after it has refilled the jar. So the consumer does not have to rebuy a new non disposable jar : it is a gain for him since the refilling container is less expensive. It pollutes less since the refilling container can be made of recycling materials like paper.
  • the disposable refilling container can be of a light weight.
  • the tank can be the coffee powder tank of a coffee machine.
  • This tank can be removable from the coffee machine or not.
  • Such a tank is useful for avoiding the refilling of the machine with a coffee powder for which the coffee machine is not tuned. The filling of the machine with an other coffee is not possible. It can also be the tank of any other machine using a bulk material.
  • a coffee machine susceptible to be refilled by a container as described above having a dosing unit presenting means for piercing the tearable membrane of the container and for cooperating with the hopper of the container.
  • the means for piercing the tearable membrane of the container and for cooperating with the hopper of the container are preferably a conduit presenting a section smaller than the section of the opened end of the container vessel and bigger than the section of the hopper discharge outlet.
  • the outlet section of the conduit presents generally a symmetrical form preferably a circular form. It can present a specific form cooperating exactly with the tapered end of the hopper to avoid the refilling of the tank with a material that is not adapted for.
  • due to these relative section differences due to these relative section differences :
  • the present invention also concerns a method for refilling a tank with a container according to the present invention, said tank having a refilling opening presenting means for piercing the tearable membrane of the container and for cooperating with the hopper of the container, comprising the steps of :
  • the membrane faces the refilling opening of the tank.
  • the container is placed upside down which means that the end of the container with the membrane is the bottom of the container : so the bulk material is gravity oriented to the hopper and the discharge outlet of the hopper inside the container.
  • the operator pushes the container against the refilling opening to break the container tearable membrane. If the container is placed upside down as described above, then the bulk material flows immediately from the container through the pierced membrane inside the tank.
  • the user can easily perform the refilling operation by hand in a simple movement by turning the container upside down and pushing it against the tank to be refilled.
  • the container is not placed upside down against the refilling opening of the tank, then the assembly of the container and the tank must finally be turned so that bulk material can fall in the tank.
  • This last possibility can be preferred when the container is particularly heavy and then when it is difficult to precisely position and push the end of the container against the tank refilling opening ; it can be easier to put the empty tank upside down, to position it faced to the container, to push it against the container and then to return the assembly of the tank and the container.
  • the volume of the tank is at least equal to the volume of the container, then all the bulk material flows inside the tank and when it is empty, the container is disposed.
  • the container can stay in place above the tank and be used as an expansion tank in a following step.
  • small kitchens it is appreciated to have a container that is small and compact while providing the storage of an important amount of coffee, properties due to the optimized position of the hopper in the vessel.
  • the invention relates to the use of the container according to the present invention to refill a tank or a machine having a refilling opening, said refilling opening presenting means for piercing the tearable membrane of the container and for cooperating with the hopper of the container.
  • the main use of the above container is refilling. Effectively, this container that is preferably made of light and disposable materials enables the consumers to reload either a main non-disposable tank or to directly feed a machine with the bulk material. This use is possible if the tank or the machine to be refilled present a refilling opening that cooperates with the container of the present invention.
  • the refilling opening presents means for piercing the tearable membrane of the container and for cooperating with the hopper of the container so that bulk material can fall from the vessel through the hopper and the refilling opening inside the tank or the machine.
  • these means for piercing the tearable membrane of the container and for cooperating with the hopper of the container is a conduit presenting a section smaller than the section of the opened end of the container vessel and bigger than the section of the hopper discharge outlet.
  • the container of the present invention is used for refilling a tank.
  • This tank can be the coffee powder tank of a coffee machine or a non disposable coffee powder jar.
  • the container of the present invention is used for directly refilling a coffee machine, for example for a coffee machine that does not comprise a coffee powder tank.
  • the refilling opening of the coffee machine can directly cooperates with the dosing unit of the coffee machine.
  • the objects of the present invention present several advantages.
  • the containers according of the present invention enable the refilling of tanks without loss of bulk material outside the tank. Besides the containers avoid the contact of the bulk material with the atmosphere which can be of paramount importance for a material like coffee powder avoiding its loss of aroma or for hygroscopic powder.
  • the containers of the present invention enable the refilling of a tank that present means for cooperating with said container avoiding wrong refilling of a machine tuned to prepare beverages with a specific powder.
  • Figure 1 illustrates a container according to the present invention. It comprises a vessel 2 that is here a rigid cylinder presenting a closed end 3 and an opened end 4.
  • the length of the vessel can be reduced and the closed end of the vessel can be closed by a flexible pouch enabling the storage of a big amount of bulk material inside the container.
  • This type of flexible pouch is especially adapted for storing and dispensing soluble food powders for the preparation of beverages in beverage dispensers.
  • the flexible part is hooked in the dispenser whereas the rigid part is used for the connection to beverage preparation side part of the machine.
  • This rigid part presents the same features as the hereunder described container.
  • the container comprises a hopper 5 positioned inside the vessel volume and near to the opened end 4 of the vessel 2.
  • Said hopper extends on the whole vessel section and tapers to a discharge outlet 6 that faces the opened end 4 of the vessel.
  • the hopper is attached to a circular skirt or outside flange 12 which presents the same form as the internal wall of the vessel 2.
  • This skirt fits inside the vessel 2 and helps positioning the hopper in the vessel.
  • This skirt presents a stopping edge 11 that abuts against the vessel opened end edge and avoid the hopper sliding along the vessel wall. Due to the fact that the hopper is placed inside the vessel volume with its discharge outlet facing the vessel opened end, a groove 13 extends between the hopper tapering wall and the vessel wall along all the periphery of the hopper discharge outlet.
  • a tearable membrane 7 is fixed above the opened end 4 of the vessel 2 and above the hopper discharge outlet 6 closing simultaneously the vessel opened end and the hopper tapered end.
  • the tearable membrane can be fixed according to different variants either to the vessel or to the hopper stopping edge as further detailed in Figures 2a to 2c .
  • a protective cap 8 is placed above the tearable membrane 7 in order to prevent the tearing of the membrane before the container is used for unloading its content.
  • FIGS 2a to 2c give a good understanding of the relative position of the different elements of the container when this one is closed and of the different ways to fix the tearable membrane. It appears clearly that the hopper 5 is placed inside the vessel volume 2 so that the section of the hopper discharge outlet 6 is in the same plane as the opened end 4 of the vessel 2. For this reason, the membrane 7 placed at the opened end 4 of the vessel 2 simultaneously closes the vessel 2 and the discharge outlet 6.
  • the protection cap 8 protects the tearable membrane 7.
  • the skirt 12 on which is attached the larger end of the hopper 5 enables locking the position of the hopper inside the vessel. This skirt 12 fits exactly inside the vessel wall.
  • the skirt 12 presents a stopping edge 11 near the opened end the vessel in order to hook the hopper on the edge of the opened end of the vessel to avoid the hopper to slide.
  • the membrane 7 is fixed on the stopping edge of the hopper.
  • Figure 2b supports the definition of the tapering angle ⁇ of the hopper corresponding to the angle between the hopper tapering wall and the hopper central axis XX'.
  • the vessel 2 presents a flange 14 at its opened end edge and the membrane is fixed on this vessel flange 14. It is also possible to use a hopper with a skirt 12 presenting a stopping edge 11 near the opened end the vessel in order to hook the hopper on the edge of the opened end of the vessel ; yet said stopping edge must be less long than the flange 14 of the vessel opened end so that the membrane can be fixed on a part of the flange 14 that is not recovered by the hopper stopping edge.
  • FIGS. 2a to 2c show that the hopper discharge outlet section is substantially in the same plane as the opened end section of the vessel. Then the membrane that is fixed in this plane closes simultaneously the hopper discharge outlet and the vessel opened end.
  • Figure 2d illustrates the second mode of the present invention where the edge of the discharge outlet of the hopper is recessed inside the vessel rather than in the same plane as the opened end of the vessel.
  • the membrane 7 closes the discharge outlet 6 of the hopper and the vessel. It is fixed on the inside wall of the vessel.
  • FIG 2e illustrates a container according to the present invention which hopper 5 presents a guiding device 15, here a cylinder, coupled to the tapered end of the hopper.
  • the hopper with its guiding device is totally placed inside the vessel volume and positioned so that the outlet of the guiding device, corresponding to the hopper discharge outlet, is closed by the tearable membrane 7.
  • the membrane closes simultaneously the vessel opened end.
  • This embodiment with the hopper coupled to a guiding device can also be implemented by recessing the whole of the hopper and the guiding device and the membrane inside the vessel as illustrated in Figure 2d .
  • the membrane covers simultaneously the hopper discharge outlet 6 and the groove 13 existing between the hopper wall and the vessel wall around all the periphery of the hopper discharge outlet. Due to the membrane, the powder is safely stored. Due to the presence of the groove just under the membrane, the membrane can be tom by the tank refilling opening and the hopper can simultaneously slide inside said tank refilling opening. The contact with air is reduced.
  • Figures 3a, 3b, 4a and 4b illustrate a method for refilling a tank with a container according to the present invention.
  • Figures 3a and 3b illustrate the step where the container 1 according to the present invention is placed upside down above the tank 9 to be refilled.
  • the bulk material inside the container 1 is facing the discharge outlet 6 of the hopper and is retained by the tearable membrane 7.
  • the tank 9 presents a refilling opening presenting means 10 for piercing the tearable membrane 7 of the container and for cooperating with the hopper 5 of the container.
  • These puncture means 10 are a cylinder presenting a diameter D 10 . This diameter is bigger than the diameter D 6 of the section of the discharge outlet 6 and smaller than the diameter D 4 of the section of the opened end 4 of the vessel 2.
  • FIGs 4a and 4b illustrate the step where the container 1 is pushed by a force F against the tank refilling opening.
  • the force F could also be applied by tank against the container.
  • the force F creates a pressure of the puncture means 10 of the tank against the container tearable membrane 7 sufficient to pierce the membrane.
  • the puncture means 10 enter the vessel 2 of the container inside the peripheral groove 13 existing between the hopper tapering wall and the vessel wall and cooperate with the hopper 5.
  • this groove extending all along the periphery of the hopper discharge outlet, the cooperation of the hopper and the cylinder 10 of the tank is very tight. Then the bulk material directly flows from the vessel 2 into the tank without possibility to escape in the air or to let air enters the space between the container and the tank.
  • the container of Figures 3a and 4a presents transparent windows to control the level of the powder in the container during the emptying of the container.
  • This window can be placed in different parts of the container, a window 15 can be present in the closed end of the container or window 16 can be placed in the side wall of the container near its closed end. This latter window 16 is particularly useful when the container is used as an expansion tank of a coffee machine.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Packages (AREA)
  • Filling Or Emptying Of Bunkers, Hoppers, And Tanks (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Closures For Containers (AREA)
  • Supply Of Fluid Materials To The Packaging Location (AREA)
  • Tea And Coffee (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)
  • Beverage Vending Machines With Cups, And Gas Or Electricity Vending Machines (AREA)

Claims (12)

  1. Behälter (1) zum Lagern und Entladen von Schüttgut, mit:
    - einem Gefäß (2), das ein geschlossenes Ende (3) und ein offenes Ende (4) aufweist,
    - einem Trichter (5), der in dem Gefäß (2) angeordnet ist und sich zu einer Abgabeöffnung in Richtung des offenen Gefäßendes (4) verjüngt,
    - einer zerreißbaren Membran (7), die den Trichter (5) und das Gefäß (2) verschließt.
  2. Behälter gemäß Anspruch 1, wobei das Gefäß ein Zylinder ist.
  3. Behälter gemäß einem der Ansprüche 1 oder 2, wobei sich eine Nut zwischen der Trichterwand und der Gefäßwand entlang des gesamten Umfangs der Trichterabgabeöffnung erstreckt.
  4. Behälter gemäß einem der Ansprüche 1 bis 3, wobei der Trichter einen Verjüngungswinkel zwischen 15 und 50° aufweist.
  5. Behälter gemäß einem der Ansprüche 1 bis 4, wobei der Trichter eine Leitvorrichtung (15) für das Schüttgut umfasst, die mit dem verjüngten Ende des Trichters gekoppelt ist.
  6. Behälter gemäß einem der Ansprüche 1 bis 5, wobei die Kante der Abflussöffnung (6) des Trichters in das Gefäß (2) hinein vertieft ist und die zerreißbare Membran (7) die Abgabeöffnung (6) des Trichters bedeckt und mit der Innenwand des Gefäßes verbunden ist.
  7. Behälter gemäß einem der Ansprüche 1 bis 6, wobei der Abschnitt der Abgabeöffnung (6) des Trichters im Wesentlichen in der Ebene des Abschnittes des offenen Endes (4) des Gefäßes liegt und die zerreißbare Membran (7) die Abgabeöffnung (6) des Trichters und das offene Ende des Gefäßes bedeckt.
  8. Behälter gemäß einem der vorhergehenden Ansprüche, wobei der Trichter eine äußere Einfassung in derselben Form wie das Gefäß aufweist, wobei die Einfassung in das Gefäß eingepasst werden kann und den Trichter innerhalb des Gefäßes positionieren kann.
  9. Behälter gemäß dem vorhergehenden Anspruch, wobei die Einfassung eine Anschlagkante aufweist, die sich an die Kante des offenen Endes des Gefäßes anlehnen kann.
  10. Behälter gemäß einem der Ansprüche 1 bis 9, wobei die zerreißbare Membran (7) durch einen Berührungsdruck auf ihrer Oberfläche zerreißbar ist.
  11. Verfahren zum Nachfüllen eines Tanks mit einem Behälter gemäß einem der Ansprüche 1 bis 10, wobei der Tank eine Nachfüllöffnung mit Einrichtungen zum Durchstoßen der zerreißbaren Membran des Behälters und zum Zusammenwirken mit dem Trichter des Behälters aufweist, mit den folgenden Schritten:
    - Positionieren des Behälters und der Tanknachfüllöffnung derart, dass die zerreißbare Membran des Behälters der Tanknachfüllöffnung gegenüber liegt,
    - Drücken des Behälters gegen die Tanknachfüllöffnung oder der Tanknachfüllöffnung gegen den Behälter, um die zerreißbare Behältermembran aufzureißen,
    - zuletzt Drehen der Behälter- und Tankanordnung derart, dass das Schüttgut schwerkraftbedingt in den Tank fließt.
  12. Verfahren gemäß Anspruch 11, wobei das Volumen des Tanks geringer als das Volumen des Behälters ist und der Behälter in einem nachfolgenden Schritt als Ausdehnungsgefäß eingesetzt wird.
EP08761307A 2007-06-28 2008-06-23 Behälter zur lagerung und entladung von schüttgut Active EP2162037B1 (de)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP08761307A EP2162037B1 (de) 2007-06-28 2008-06-23 Behälter zur lagerung und entladung von schüttgut
PL08761307T PL2162037T3 (pl) 2007-06-28 2008-06-23 Pojemnik do przechowywania i wyładowywania luźnych materiałów

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
EP07111228A EP2008553B1 (de) 2007-06-28 2007-06-28 Container zur Lagerung und Entladung von Schüttgut
PCT/EP2008/057961 WO2009000810A1 (en) 2007-06-28 2008-06-23 Container for storing and unloading bulk material
EP08761307A EP2162037B1 (de) 2007-06-28 2008-06-23 Behälter zur lagerung und entladung von schüttgut

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EP2162037A1 EP2162037A1 (de) 2010-03-17
EP2162037B1 true EP2162037B1 (de) 2012-08-29

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TW200920294A (en) 2009-05-16
HK1127987A1 (en) 2009-10-16
US20100186597A1 (en) 2010-07-29
ES2350531T3 (es) 2011-01-24
JP2009007067A (ja) 2009-01-15
AR067374A1 (es) 2009-10-07
DE602007009815D1 (de) 2010-11-25
EP2162037A1 (de) 2010-03-17
UA98794C2 (ru) 2012-06-25
AU2008267286A1 (en) 2008-12-31
ZA201000637B (en) 2011-04-28
EP2008553A1 (de) 2008-12-31
MX2009012992A (es) 2010-01-15
HK1141959A1 (en) 2010-11-26
JP4944164B2 (ja) 2012-05-30
JP4523052B2 (ja) 2010-08-11
EP2008553B1 (de) 2010-10-13
US8505590B2 (en) 2013-08-13
NZ581548A (en) 2012-12-21
PL2008553T3 (pl) 2011-04-29
BRPI0813229B1 (pt) 2019-02-12
WO2009000810A1 (en) 2008-12-31
BRPI0813229A2 (pt) 2014-12-23
JP2009007072A (ja) 2009-01-15
MY151408A (en) 2014-05-30
PT2162037E (pt) 2012-10-29
PT2008553E (pt) 2010-11-09
ATE484224T1 (de) 2010-10-15
PL2162037T3 (pl) 2013-01-31
TWI457100B (zh) 2014-10-21
AU2008267286B2 (en) 2015-01-22
CA2688266C (en) 2015-06-16
CL2008001937A1 (es) 2010-04-09
UA98968C2 (ru) 2012-07-10
ES2392372T3 (es) 2012-12-10
HRP20100639T1 (hr) 2010-12-31
CA2688266A1 (en) 2008-12-31
KR101245907B1 (ko) 2013-03-20
RU2010102709A (ru) 2011-08-10
CN101686773A (zh) 2010-03-31
KR20100024959A (ko) 2010-03-08
CN101686773B (zh) 2012-01-18
CO6251219A2 (es) 2011-02-21
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